Browse > Article
http://dx.doi.org/10.5916/jkosme.2010.34.3.351

Performance Analysis and Emission Characteristics of a Bi-fuel Using Spark Ignition Engine  

Mahmud, Md. Iqbal (Department of Mechanical Engineering Kongju National University)
Cho, Haeng-Muk (Department of Mechanical Engineering, Kongju National University)
Abstract
Bi-fuel system in a spark ignition engine (SIE) is a rising phenomena in today's automobile technology. In a gasoline driven vehicle, alternatively adoption of compressed natural gas (CNG) could be used as a potential substitute to meet the energy requirement and this is possible by some minor changes in the hardware of the existing engine. Gasoline engine is widely used in the passenger cars, light, medium and heavy duty vehicles but the consumption status of the petroleum is decreasing worldwide and at the same time environmental pollution from automobiles is seriously establishes as a threat for every nation in respect to global warming and climate changes. Now-a-days most vehicles operate using CNG for its popularity stems, clean burning properties and cost effective solution compared to other alternative fuels. It refers as a good gaseous fuel because of its high octane number and self ignition temperature. Though the power output is slightly lesser than the gasoline fuel; its thermal efficiency is better than the gasoline for the same SIE. The research paper highlights the reduction of CO, reasonable outcomes of HC emissions with minor increase in $NO_x$ emissions compared with the gasoline fuel to bi-fuel mode in the SIE that meets the emission challenges.
Keywords
Spark Ignition Engine (SIE); Compressed Natural Gas (CNG); Gasoline; Bi-fuel; Emissions;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 M. Q. Wang and H. S. Huang "A full fuel-cycle analysis of energy and emission impacts of transportation fuels produced from natural gas", Center for Transportation Research, Energy System Division, Argonne National Laboratory, operated by The university of Chicago (contract no. W-31-109-Eng-38), sponsored by the U.S.department of Energy, 1999.
2 E. J. Lyford-Pike "An emission and performance comparison of the natural gas C-Gas plus engine in heavy duty trucks", A Subcontractor Report (contract no. DE-AC36-99-GO10337) by National Renewable Energy Laboratory (NREL), U.S. department of Energy, NREL/SR-540-32863, 2003
3 http://stason.org/TULARC/science-engineering/chemistry/27-2-What-are-CNG-LPG-gasoline-kerosine-diesel.html
4 J.B. Heywood, "Internal Combustion Engine Fundamentals", McGraw-Hill, Singapore, pp. 915, 1988.
5 Suresh, K. P., Mahanta, P., and Saha, U. K., "Emissions Characteristics of CNG in Automobiles", Proceedings of All India Seminar on Application of Compressed Natural Gas (CNG) as an Automotive Fuel, Guwahati, India, pp. 23-30, 2002.
6 http://www.altfuels.org/backgrnd/altftype/cng.html
7 Bhupendra and Haeng Muk Cho "A comparative study of gasoline and CNG as potential fuel in Korea", Proceedings of the Korean Society of Mechanical Engineers(KSME), 2008 fall Annual Meeting, South Korea, 2008.
8 Haeng Muk Cho and Md. Iqbal Mahmud, "Benefit analysis of CNG as an automobile fuel". Journal of the Korean Society of Clean Technology, vol. 15 no. 1, pp. 1-8, 2009.   과학기술학회마을
9 Weaver CS. "Natural gas vehicle - A review of the state of art", SAE paper no. 891966, 1989.
10 "Flexible Fuel Vehicles: Providing a Renewable Fuel Choice", Clean Cities Fact Sheet, Energy Efficiency and Renewable Energy, U.S. Department of Energy, 2008.
11 H. M. Cho and B.Q. He, "Spark ignition natural gas engines ?A review", Energy Conversion and Management 48, pp. 608-618, 2007.   DOI   ScienceOn
12 U. Kesgin, "Study on the design of inlet and exhaust system of a stationary internal combustion engine", Energy Conversion and Management 46, pp. 2258-2287, 2005.
13 Gianluca D'Errico, "Prediction of the combustion process and emission formation of a bi-fuel s.i. engine", Energy Conversion and Management 49, pp. 3116-3128, 2008.   DOI   ScienceOn